人类活动对Museve和Mutuluni干旱林残片树木密度和直径分布的影响基图伊县,肯尼亚

J. M. Musau, J. Mugo
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引用次数: 0

摘要

干旱半干旱区森林残片是重要的集水区,提供重要的生态系统服务。然而,不受控制的人类活动正在迅速改变它们的茎密度、基面积和直径结构,导致森林退化。此外,穆塞夫和穆图鲁尼等旱地森林碎片的乔木密度和直径大小级分布信息缺乏。因此,本研究的目的是记录肯尼亚基图伊Museve和Mutuluni森林碎片中的关键人类活动,并比较研究其对茎密度、基面积和茎直径大小类分布的影响。在每个森林内建立了宽20 m、长500 m的2个样带样带,样带样地为20 m × 20 m,样带样地为10 m × 10 m。人类活动的证据、成熟树木的丰度和直径测量值在20 m × 20 m样地进行评估,而树苗的丰度和直径测量值在子样地进行评估。采用Mann-Whitney检验、t检验和logistic回归进行数据分析。木腐林干密度显著高于木腐林(p<0.05),但基片密度差异不显著(p<0.05)。外来种的引入增加了木栎林的基面积和茎密度(p<0.05)。树木采伐降低了木塞夫林的基面积和茎密度,而穆图鲁尼林仅降低了茎密度。两种森林的茎密度直径分布均遵循反j曲线,但穆塞夫林比穆图鲁尼林有更多的波动和不规则性。两种林分的径级分布无显著差异(p<0.05)。因此,人类活动显著影响了穆塞夫两个高影响森林片段的树木密度。本研究建议制定适当的保护和养护策略,特别是对木树,以控制树木砍伐和增加树木密度。
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Influences of Human Activities on Tree Density and Diameter Distribution in Museve and Mutuluni Dryland Forest Fragments; Kitui County, Kenya
Forest fragments in Arid and Semi-Arid Lands are key water catchment areas and provide important ecosystem services. However, uncontrolled human activities are fast altering their stem density basal area and diameter structure resulting into forest degradation. Besides, information regarding tree density and diameter size-class distribution of dryland forest fragments such as Museve and Mutuluni is lacking. Thus, the purpose of this study was to document key human activities in Museve and Mutuluni forest fragments in Kitui, Kenya and comparatively investigate their influences on stem density, basal area and stem diameter size-class distribution. Two belt transect of 20 m wide and 500 m long, with contiguous sample plots of 20 m by 20 m and subplots of 10 m by 10 m were established in each forest. Evidence of human activities, abundances and diameter measurements for mature trees were assessed in the 20 m by 20 m plots while abundances and diameter measurements for saplings were in the subplots. Mann-Whitney, t-test and logistic regression were used for data analysis. Mutuluni forest exhibited significantly (p<0.05) high stem density compared to Museve however, basal area density was not different (p<0.05). Introduction of exotic species enhanced basal area and stem density (p<0.05) in Museve forest. Tree cutting reduced both basal area and stem density in Museve forest and only stem density in Mutuluni. Stem-density diameter distribution in both forests followed a reverse J-curve but with more fluctuations and irregularities observed in Museve compared to Mutuluni forest. Diameter size-class distribution did not differ (p<0.05) across the two forests. Therefore human activities significantly impacted on tree density in both forest fragments with high impacts in Museve. This study recommends formulation of appropriate protection and conservation strategies, especially for Museve, to control tree cutting and increase tree density.
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